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What are the factors that affect the efficiency of methanol separation? Answer: (1) The cooling temperature of methanol. (2) Pressure of the syngas. (3) The quality of the separator’s structure, and whether the internal components are properly designed. (4) Appropriate gas flow rate; generally, the gas flow rate is 1–1.5 m/s. (5) Level of the separator liquid
1. Temperature: It must be below the critical temperature; the lower the temperature, the better. The critical temperature of methanol is 239.4 degrees Celsius. 2. Pressure: The critical pressure of methanol is 8.1 Mpa. 3. The quality of the separator’s design and whether the internal components are properly structured. 4. An appropriate gas flow rate; generally, this ranges from 1 to 1.5 m/s. 5. The level of liquid in the separation chamber.
(1) Cooling temperature of methanol. (2) Pressure of the syngas. (3) The quality of the separator’s structure, and whether the internal components are properly designed. (4) Appropriate gas flow rate; generally, the gas flow rate is 1–1.5 m/s. (5) The level of the liquid in the separator.
1. Cooling temperature 2. Pressure 3. Structure 4. Flow rate: 1~1.5 5. Liquid level
(1) Cooling temperature of methanol. (2) Pressure of the syngas. (3) The quality of the separator’s structure, and whether the internal components are properly designed. (4) Appropriate gas flow rate; generally, the gas flow rate is 1–1.5 m/s. (5) The level of the liquid in the separator.
The factors affecting the methanol separation efficiency are: (1) the cooling temperature of methanol. (2) Pressure of the syngas. (3) The quality of the separator’s structure, and whether the internal components are properly designed. (4) Appropriate gas flow rate; generally, the gas flow rate is 1–1.5 m/s. (5) The level of the separator liquid.
1. The cooling temperature of methanol. 2. Pressure of the syngas. 3. The quality of the separator’s structure, as well as whether the internal components are properly designed. 4. An appropriate gas flow rate; generally, the gas flow rate is 1–1.5 m/s. 5. The level of the liquid in the separator.
(1) Cooling temperature of methanol. (2) Pressure of the syngas. (3) The quality of the separator’s structure, and whether the internal components are properly designed. (4) Appropriate gas flow rate; generally, the gas flow rate is 1–1.5 m/s. (5) The level of the liquid in the separator.
(1) Cooling temperature of methanol. (2) Pressure of the syngas. (3) The quality of the separator’s structure, and whether the internal components are properly designed. (4) Appropriate gas flow rate; generally, the gas flow rate is 1–1.5 m/s. (5) The level of the liquid in the separator.
1. Cooling temperature of methanol. 2. Pressure of the syngas. 3. The quality of the separator’s design and whether the internal components are properly structured. 4. Appropriate gas flow rate; generally, this is 1–1.5 m/s. 5. Level of liquid in the separator.
①Cooling temperature; ②Pressure of syngas ; ③The quality of the separator’s structure, as well as whether the internal components are properly designed ; ④Appropriate gas flow rate ; ⑤The level of the liquid in the separator.